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基于卟啉的多信号化学传感器用于检测 Pb2+ 和 Cu2+。

Porphyrin-based multi-signal chemosensors for Pb2+ and Cu2+.

机构信息

Key Laboratory of Coordination Chemistry and Functional Materials in Universities of Shandong, Dezhou University, Dezhou 253023, China.

出版信息

Org Biomol Chem. 2012 Jun 28;10(24):4782-7. doi: 10.1039/c2ob25313e. Epub 2012 May 17.

Abstract

Two metal-free tetra(aryl)porphyrin derivatives modified by one and four N,N-bis(2-pyridylmethyl)amino group(s), namely porphyrin-1-DPA (1) and porphyrin-4-DPA (2) respectively, have been designed, synthesized, and characterized. Binding with Pb(2+) induces a significant change in their solution color and in the ratio of two absorption/fluorescence signal peaks, rendering them the first example of porphyrin-based triple-signal optical sensors for Pb(2+). Their dual-mode Cu(2+)-selective sensing properties via either the porphyrin fluorescence ON-OFF mechanism or metal displacement from the 1-Pb(2+) complex that results in a triple-signal change clearly reveals their potential application as excellent and versatile sensors.

摘要

设计、合成并表征了两种无金属四(芳基)卟啉衍生物,它们分别通过一个和四个 N,N-双(2-吡啶甲基)氨基基团(DPA)进行了修饰,即卟啉-1-DPA(1)和卟啉-4-DPA(2)。与 Pb(2+)结合会导致其溶液颜色和两个吸收/荧光信号峰比值发生显著变化,使它们成为基于卟啉的三重信号光学传感器中首例用于检测 Pb(2+)的传感器。通过卟啉荧光 ON-OFF 机制或从 1-Pb(2+) 配合物中置换金属导致三重信号变化的方式,实现了对 Cu(2+)的双通道选择性传感,这清楚地表明它们有可能作为优秀且多功能的传感器得到应用。

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